2022
DOI: 10.1016/j.inoche.2022.109336
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Preparation of antibacterial Gel/PCL nanofibers reinforced by dicalcium phosphate-modified graphene oxide with control release of clindamycin for possible application in bone tissue engineering

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Cited by 22 publications
(7 citation statements)
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“…The results are consistent with those of previous studies because the addition of TiO 2 to polymer base usually increases the elastic modulus and mechanical properties due to the high elastic modulus of TiO 2 (300–320 GPa) 57,58 . In addition, a recent study by Budi et al 59 demonstrated that the PCL and nanoparticles could improve the gelatin nanofiber mechanical properties. It should be noted that although the skin Young's modulus differs depending on the site location, age, and sexuality, skin tissue needs approximately 20–40 MPa Young's modulus 60,61 .…”
Section: Resultssupporting
confidence: 92%
“…The results are consistent with those of previous studies because the addition of TiO 2 to polymer base usually increases the elastic modulus and mechanical properties due to the high elastic modulus of TiO 2 (300–320 GPa) 57,58 . In addition, a recent study by Budi et al 59 demonstrated that the PCL and nanoparticles could improve the gelatin nanofiber mechanical properties. It should be noted that although the skin Young's modulus differs depending on the site location, age, and sexuality, skin tissue needs approximately 20–40 MPa Young's modulus 60,61 .…”
Section: Resultssupporting
confidence: 92%
“…GO has characteristic peaks at 3313 cm −1 and 1730 cm −1 assigned to the stretching O–H and C=O of carboxyl groups [ 49 , 50 ]. Successful integration of GO flakes within the PVA-GO-derived shell is indicated by the increasing shoulder at 1145 cm −1 , indicating the formation of a new bond.…”
Section: Resultsmentioning
confidence: 99%
“…Nanomaterial form References Polymeric nanomaterials Nanocapsules, hydrogels, chitosan, dan liquid crystals (Abdelghany et al, 2021;Gwak et al, 2021;Huang et al, 2022;Ling et al, 2022;Seo et al, 2022) Nanoparticulate systems Nanospheres, nanotopes, nanocrystals, nanofibers, dan nanopigments (Asadi et al, 2022;De et al, 2014;Ghalehkhondabi et al, 2022;P. Mishra et al, 2021;Nafisi & Maibach, 2017;Setia Budi et al, 2022;Zarandi et (Alkalbani et al, 2022;Dong et al, 2022;Fytianos et al, 2020;Gut et al, 2020;Pandey et al, 2019;Peng et al, 2020;Salama & Abdel Aziz, 2020) Organic nanomaterials Lipid nanoparticles (solid lipid nanoparticles and nanostructured lipid carriers), liposomes, nanosomes, niosomes, ethosomes, transferosomes, cubosomes, multiple emulsions, ultrasomes, photosomes, aquasomes, and nanoemulsions (Allouche, 2013;Barriga et al, 2019;Daraee et al, 2016;Gopalakrishnan et al, 2013;Himeno et al, 2017;Ito et al, 2012;S. S. Jain et al, 2012;Jaiswal et al, 2015;A.…”
Section: Typementioning
confidence: 99%